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Noor, Noraini Mohd; Yunus, Kamariah; Yusoff, Ahmad Mujahideen Haji; Nasir, Noormaizatul Akmar Muhammad; Yaacob, Nurul Husna – Journal of Language and Linguistic Studies, 2021
Time has contributed to most of our daily activities. In the field of understanding how the human brain reacted to specific learning processes, the neuroscientist supports the impact of having multiple learning sessions with the retention of knowledge. Spaced Learning is a product makes out of human's lack of capacity in retaining information and…
Descriptors: Teaching Methods, Learning Processes, Second Language Learning, Second Language Instruction
Tracey Tokuhama-Espinosa; Jovi R. S. Nazareno; Christopher Rappleye – Teachers College Press, 2024
Writing is the highest form of thinking, as evidenced by neuroimaging that shows how more neural networks are activated simultaneously during writing than during any other cognitive activity. This book will help teachers understand how the brain learns to write by unveiling 15 stages of thinking that underpin the writing process, along with…
Descriptors: Neurosciences, Writing Assignments, Writing Processes, Feedback (Response)
Amjad Islam Amjad; Musarrat Habib; Umaira Tabassum; Gulshan Fatima Alvi; Naveed Ahmad Taseer; Iqra Noreen – International Electronic Journal of Elementary Education, 2023
The current study aimed to explore the effect of Brain-Based Learning on students' intrinsic motivation (IM) to learn and perform in mathematics. Owing to the educational implications of Neuroscience, the researchers planned the mixed-methods experimental study with a convergent parallel research design. The participants were eighth-graders…
Descriptors: Middle School Students, Grade 8, Males, Public Schools
Varma, Sashank; Blair, Kristen P.; Schwartz, Daniel L. – Research in Mathematics Education, 2019
This chapter considers psychological and neuroscience research on how people understand the integers, and how educators can foster this understanding. The core proposal is that new, abstract mathematical concepts are built upon known, concrete mathematical concepts. For the integers, the relevant foundation is the natural numbers, which are…
Descriptors: Cognitive Science, Mathematical Concepts, Numbers, Psychological Patterns
Trina M. Dreyer – ProQuest LLC, 2023
Educational neuroscience bridges research in neuroscience and in educational theories and practices (Amran et al., 2019). The science behind how the brain learns informs educational approaches that can be applied in the classroom (Howard-Jones, 2014). Prior research has focused on teachers' knowledge and applications of educational neuroscience,…
Descriptors: Neurosciences, Faculty Development, Educational Theories, Administrator Attitudes
David Juárez-Varón; Manuel Ángel Juárez-Varón; Ana Mengual-Recuerda; Beatriz Andres – International Journal of Game-Based Learning, 2024
This research delves into the comparative analysis of brain activity using gamification in the classroom versus traditional teaching. This study aims to employ neurotechnology to record and analyse the impact of active gamification methodology on relevant variables in the learning process within a traditional university education setting,…
Descriptors: College Students, Human Resources, Personnel Management, Courses
Joshua Wedlock; Nick Wilson – TESOL in Context, 2024
Considering the need for pedagogically effective learning activities and materials to support language learning, particularly within teacher-led instruction, it is curious that at present there is no overarching, research-based framework available to educators to draw from when designing and implementing such activities and materials. To address…
Descriptors: Neurosciences, Educational Psychology, Second Language Learning, Learning Activities
Darling-Hammond, Linda; Flook, Lisa; Schachner, Abby; Wojcikiewicz, Steven – Learning Policy Institute, 2022
Research advances in neuroscience and the developmental and learning sciences have provided us with important insights about how people learn and develop. The knowledge we now have points to important transformations in teaching practice, which in turn require transformations in educator development in order to support all educators in developing…
Descriptors: Learning Processes, Neurosciences, Preservice Teacher Education, Inservice Teacher Education
da Silva Soares, Raimundo, Jr.; Barreto, Candida; Sato, João R. – South African Journal of Childhood Education, 2023
Background: Many students struggle with mathematics difficulties, such as arithmetic problem-solving, intuitive geometry concepts and learning disabilities. Currently, there is an increasingly interesting in applying neuroscientific research paradigms to elucidate mathematical thinking and neural mechanisms that underlie academic achievement. On…
Descriptors: Eye Movements, Mathematics Education, Difficulty Level, Neurosciences
Mason, Lucia; Zaccoletti, Sonia – Educational Psychology Review, 2021
Recent research about the learning of science has suggested that misconceptions are not replaced by scientific conceptions and extinguished once conceptual change has occurred. Rather, misconceptions still exist alongside the acquired scientific conceptions and must be suppressed in order to use scientific conceptions. Our goal in this review is…
Descriptors: Inhibition, Learning Processes, Scientific Concepts, Misconceptions
Claudia De Barros Camargo; Antonio Hernández Fernández – Educational Process: International Journal, 2024
Background/Purpose: This study investigates the integration of neuropedagogy, neuroimaging, artificial intelligence (AI), and deep learning in educational systems. The research aims to elucidate how these technologies can be synergistically applied to optimize learning processes based on individual neurocognitive profiles, thereby enhancing…
Descriptors: Artificial Intelligence, Educational Practices, Intelligent Tutoring Systems, Neurosciences
Tan, Yuen Sze Michelle; Amiel, Joshua Johnstone – Professional Development in Education, 2022
Little is known about the integration of current neuroscience knowledge to classroom teaching, although many teachers rely on neuromyths to shape their pedagogies. Through a professional development approach, the learning study, we explored how teachers learned to apply neuroscience to teaching instruction. The teachers collaborated to design,…
Descriptors: Neurosciences, Teaching Methods, Faculty Development, Misconceptions
McConchie, Liesl; Jensen, Eric – Educational Leadership, 2020
Authors of the newly revised Teaching with the Brain in Mind, Liesl McConchie and Eric Jensen offer whole-brain approaches teachers can take to engage students in new learning and retaining that knowledge.
Descriptors: Teaching Methods, Brain Hemisphere Functions, Learning Processes, Neurosciences
Heller, Rafael – Phi Delta Kappan, 2019
Kappan's editor talks with Tracey Tokuhama-Espinosa, a leader in the international movement to translate findings from neuroscience into usable knowledge for educators. Topics include neuromyths (common, but erroneous, beliefs about how the brain works), the current scientific consensus about how people learn, and the contributions that the…
Descriptors: Brain, Neurosciences, Misconceptions, Learning Processes
Jennie K. Grammer; Keye Xu; Agatha Lenartowicz – npj Science of Learning, 2021
Activities that are effective in supporting attention have the potential to increase opportunities for student learning. However, little is known about the impact of instructional contexts on student attention, in part due to limitations in our ability to measure attention in the classroom, typically based on behavioral observation and…
Descriptors: Correlation, Classroom Environment, Attention Control, Diagnostic Tests

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